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A nondestructive method to estimate the chlorophyll content of Arabidopsis seedlings

机译:估算拟南芥幼苗叶绿素含量的一种非破坏性方法

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BackgroundChlorophyll content decreases in plants under stress conditions, therefore it is used commonly as an indicator of plant health. Arabidopsis thaliana offers a convenient and fast way to test physiological phenotypes of mutations and treatments. However, chlorophyll measurements with conventional solvent extraction are not applicable to Arabidopsis leaves due to their small size, especially when grown on culture dishes. ResultsWe provide a nondestructive method for chlorophyll measurement whereby the red, green and blue (RGB) values of a color leaf image is used to estimate the chlorophyll content from Arabidopsis leaves. The method accommodates different profiles of digital cameras by incorporating the ColorChecker chart to make the digital negative profiles, to adjust the white balance, and to calibrate the exposure rate differences caused by the environment so that this method is applicable in any environment. We chose an exponential function model to estimate chlorophyll content from the RGB values, and fitted the model parameters with physical measurements of chlorophyll contents. As proof of utility, this method was used to estimate chlorophyll content of G protein mutants grown on different sugar to nitrogen ratios. ConclusionThis method is a simple, fast, inexpensive, and nondestructive estimation of chlorophyll content of Arabidopsis seedlings. This method lead to the discovery that G proteins are important in sensing the C/N balance to control chlorophyll content in Arabidopsis .
机译:背景技术在胁迫条件下植物中的叶绿素含量会降低,因此通常用作植物健康的指标。拟南芥提供了一种方便快捷的方法来测试突变和治疗方法的生理表型。但是,常规溶剂提取法测定叶绿素的尺寸较小,因此不适用于拟南芥叶片,尤其是在培养皿上生长时。结果我们提供了一种非破坏性的叶绿素测量方法,其中彩色叶图像的红色,绿色和蓝色(RGB)值用于估计拟南芥叶中的叶绿素含量。该方法通过合并ColorChecker图表来制作数码负片,调整白平衡并校准由环境引起的曝光率差异,从而适应数码相机的不同特性,因此该方法适用于任何环境。我们选择了一个指数函数模型,以从RGB值估算叶绿素含量,并将模型参数与叶绿素含量的物理测量值进行拟合。作为实用性的证明,该方法用于估计在不同糖氮比条件下生长的G蛋白突变体的叶绿素含量。结论该方法是一种简便,快速,廉价且无损评估拟南芥幼苗叶绿素含量的方法。这种方法导致发现G蛋白在感应C / N平衡对控制拟南芥中叶绿素含量方面具有重要作用。

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